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    • 1. 发明申请
    • OPTICAL BRILLOUIN SENSING SYSTEMS
    • 光学感光系统
    • US20130229649A1
    • 2013-09-05
    • US13409310
    • 2012-03-01
    • Ming-Jun LiShenping LiRichard Stephen Vodhanel
    • Ming-Jun LiShenping LiRichard Stephen Vodhanel
    • G01N21/49G01N21/17
    • G01M5/0091G01D5/35364G01K11/32
    • According to one embodiment, an optical sensing system may include a gated optical amplifier, one or more triggering devices, and an optical coupler. The gated optical amplifier can receive a pulse signal and transform the pulse signal into an amplified pulse signal having an amplified peak portion. The triggering devices can control the gated optical amplifier such that the gated optical amplifier is in the lossy state while the baseline portion of the pulse signal is transformed and the gated optical amplifier is in the gain state while the peak portion of the pulse signal is transformed. The amplified pulse signal can be transmitted to the sensing optical fiber and a sensed optical signal can be received, when the sensing optical fiber is connected to the optical coupler. Optionally, a second pulse signal and the sensed optical signal can be combined and detected with a coherent balanced detection technique.
    • 根据一个实施例,光学感测系统可以包括门控光放大器,一个或多个触发装置和光耦合器。 门控光放大器可以接收脉冲信号并将脉冲信号转换成具有放大峰值部分的放大脉冲信号。 触发装置可以控制门控光放大器,使得门控光放大器处于损耗状态,而脉冲信号的基线部分被变换,并且门控光放大器处于增益状态,同时脉冲信号的峰值部分被变换 。 当感测光纤连接到光耦合器时,放大的脉冲信号可以传输到感测光纤并且可以接收感测的光信号。 可选地,可以用相干平衡检测技术组合并检测第二脉冲信号和感测到的光信号。
    • 2. 发明申请
    • Optical Fiber Imaging System And Method For Generating Fluorescence Imaging
    • 光纤成像系统及产生荧光成像的方法
    • US20110121202A1
    • 2011-05-26
    • US12623973
    • 2009-11-23
    • Ming-Jun LiShenping Li
    • Ming-Jun LiShenping Li
    • G01J1/58
    • G01J3/10G01J3/4406H01S3/0057H01S3/0675H01S3/06754H01S3/06791H01S3/2383
    • A nonlinear fluorescence imaging system and method for generating fluorescence imaging includes a pulsed laser source for generating laser pulses at a first wavelength and an optical pulse stretcher including one or more optical pulse stretcher fibers having a first dispersion parameter at the first wavelength. The system also includes a probe for interfacing with a sample to deliver the laser pulses and extract fluorescence signals excited in the sample. One or more optical delivery fibers are included for delivering the laser pulses and collecting nonlinear fluorescence signals. The optical delivery fiber has a second dispersion parameter at the first wavelength which is opposite a polarity of the first dispersion parameter. A detector detects images based on the collected fluorescence signals.
    • 用于产生荧光成像的非线性荧光成像系统和方法包括用于产生第一波长的激光脉冲的脉冲激光源和包括具有第一波长的第一色散参数的一个或多个光脉冲展宽光纤的光脉冲展宽器。 该系统还包括用于与样品接口以传送激光脉冲并提取在样品中激发的荧光信号的探针。 包括一个或多个光学传递光纤用于传送激光脉冲和收集非线性荧光信号。 光传送光纤具有与第一色散参数的极性相反的第一波长的第二色散参数。 检测器基于收集的荧光信号检测图像。
    • 3. 发明授权
    • Distributed brillouin sensing systems and methods using few-mode sensing optical fiber
    • 分布式布里渊传感系统和使用多模感光光纤的方法
    • US08493556B2
    • 2013-07-23
    • US13344065
    • 2012-01-05
    • Ming-Jun LiShenping LiXiaobin Wang
    • Ming-Jun LiShenping LiXiaobin Wang
    • G01N21/00
    • G01K11/32G01L1/246
    • Some embodiments of a distributed Brillouin optical fiber sensing system employs a sensing optical fiber that supports two or more (i.e., few) guided modes. Pump light supported by one of the guided modes is used to form a dynamic Brillouin grating (DBG). Probe light supported by at least one of the other guided modes interacts with the DBG to form reflected probe light that is received and analyzed to determine a Brillouin frequency shift, a phase matching wavelength between probe and pump light, a reflection location, which in turn allows for making a measurement of at least one condition along the sensing optical fiber. Supporting the pump and probe light in different guided modes results in the optical fiber sensing system being able to simultaneously measure temperature and strain and having a higher spatial resolution than sensing systems where the pump light and probe light share a common guided mode.
    • 分布式布里渊光纤感测系统的一些实施例采用支持两个或更多(即少数)导模的传感光纤。 由一个引导模式支持的泵浦光用于形成动态布里渊光栅(DBG)。 由其他引导模式中的至少一个支撑的探测光与DBG相互作用以形成被接收和分析的反射探测光,以确定布里渊频移,探针与泵浦光之间的相位匹配波长,反射位置 允许沿着感测光纤测量至少一个条件。 以不同的导向模式支持泵浦和探测光,导致光纤感测系统能够同时测量温度和应变,并且具有比泵浦光和探针光共享共同引导模式的感测系统更高的空间分辨率。
    • 4. 发明授权
    • Optical fiber light source based on third-harmonic generation
    • 基于三次谐波发生的光纤光源
    • US07339721B1
    • 2008-03-04
    • US11712159
    • 2007-02-28
    • George Edward BerkeyMing-Jun LiShenping LiDaniel Aloysius Nolan
    • George Edward BerkeyMing-Jun LiShenping LiDaniel Aloysius Nolan
    • G02F2/02G02B6/036
    • G02F1/3536G02B6/03605G02B6/03644G02F1/365G02F2001/354
    • An optical-fiber-based light source that generates light via third-harmonic (TH) generation is disclosed. The light source includes a pump light source that provides pump light having a fundamental mode of wavelength λP. The light source also includes an optical fiber optically coupled to the pump light source. The optical fiber's core refractive index profile has (i) a central region with a refractive index value Δ1, (ii) a first annular region immediately surrounding the central region and having a refractive index value Δ2, and (iii) a second annular region immediately surrounding the first annular region and having a refractive index value Δ3. The optical fiber satisfies the conditions Δ2 1.2%. The pump light produces TH-generated light having a higher-order mode of wavelength λTH=(1/3)λP and that is outputted at the optical fiber output end. The pump light fundamental mode overlaps the TH-generated-light higher order mode over the length of the optical fiber to provide a conversion efficiency of 1% or greater.
    • 公开了一种通过三次谐波(TH)产生光产生光的基于光纤的光源。 光源包括提供具有波长λ基波模式的泵浦光的泵浦光源。 光源还包括光学耦合到泵浦光源的光纤。 光纤的芯折射率分布具有(i)折射率值为Δ1的中心区域,(ii)直接围绕中心区域并具有折射率值Delta 2 ,和(iii)紧邻环绕第一环形区域并具有折射率值Δ3的第二环形区域。 光纤满足条件ΔΔ2<1>和Δ2<3> 3> 3,并且max {Delta 1/2> 3&lt; 3&gt;&Delta;&Delta; 2&CenterDot;&CenterDot;&CenterDot;&CenterDot;&CenterDot; 泵浦光产生TH产生的光,其具有高阶模式的波长λ=(1/3)λP&lt; P&gt;,并且在光纤输出端输出 。 泵浦光基本模式在光纤长度上与TH生成光高阶模式重叠,以提供1%或更大的转换效率。
    • 5. 发明授权
    • Distributed Brillouin sensing systems and methods using few-mode sensing optical fiber
    • 分布式布里渊传感系统和使用多模感光光纤的方法
    • US08493555B2
    • 2013-07-23
    • US13097201
    • 2011-04-29
    • Ming-Jun LiShenping LiXiaobin Wang
    • Ming-Jun LiShenping LiXiaobin Wang
    • G01N21/00
    • G01K11/32G01L1/246
    • A distributed Brillouin optical fiber sensing system employs a sensing optical fiber that supports two or more (i.e., few) guided modes. Pump light supported by one of the guided modes is used to form a dynamic Brillouin grating (DBG). Probe light supported by at least one of the other guided modes interacts with the DBG to form reflected probe light that is received and analyzed to determine a Brillouin frequency shift and a reflection location, which in turn allows for making a measurement of at least one condition along the sensing optical fiber. Supporting the pump and probe light in different guided modes results in the optical fiber sensing system having a higher spatial resolution than sensing systems where the pump light and probe light share a common guided mode.
    • 分布式布里渊光纤感测系统采用支持两个或更多(即少数)导模的传感光纤。 由一个引导模式支持的泵浦光用于形成动态布里渊光栅(DBG)。 由其他引导模式中的至少一个支撑的探测光与DBG相互作用以形成被接收和分析的反射探测光,以确定布里渊频移和反射位置,其反过来允许进行至少一个条件的测量 沿传感光纤。 以不同的导向模式支持泵浦和探测光,导致光纤传感系统具有比泵浦光和探针光共享共同引导模式的传感系统更高的空间分辨率。
    • 6. 发明申请
    • Distributed Brillouin Sensing Systems and Methods Using Few-Mode Sensing Optical Fiber
    • 分布式布里渊传感系统和方法使用微模式感光光纤
    • US20120274926A1
    • 2012-11-01
    • US13097201
    • 2011-04-29
    • Ming-Jun LiShenping LiXiaobin Wang
    • Ming-Jun LiShenping LiXiaobin Wang
    • H01S3/30G01N21/25
    • G01K11/32G01L1/246
    • A distributed Brillouin optical fiber sensing system employs a sensing optical fiber that supports two or more (i.e., few) guided modes. Pump light supported by one of the guided modes is used to form a dynamic Brillouin grating (DBG). Probe light supported by at least one of the other guided modes interacts with the DBG to form reflected probe light that is received and analyzed to determine a Brillouin frequency shift and a reflection location, which in turn allows for making a measurement of at least one condition along the sensing optical fiber. Supporting the pump and probe light in different guided modes results in the optical fiber sensing system having a higher spatial resolution than sensing systems where the pump light and probe light share a common guided mode.
    • 分布式布里渊光纤感测系统采用支持两个或更多(即少数)导模的传感光纤。 由一个引导模式支持的泵浦光用于形成动态布里渊光栅(DBG)。 由其他引导模式中的至少一个支撑的探测光与DBG相互作用以形成被接收和分析的反射探测光,以确定布里渊频移和反射位置,其反过来允许进行至少一个条件的测量 沿传感光纤。 以不同的导向模式支持泵浦和探测光,导致光纤传感系统具有比泵浦光和探针光共享共同引导模式的传感系统更高的空间分辨率。